Moshaver Bijan, van der Pol Marjolein A, Westra August H, Ossenkoppele Gert J, Zweegman Sonja, Schuurhuis Gerrit Jan
Department of Hematology, VU University Medical Center, Amsterdam, The Netherlands.
Leuk Lymphoma. 2008 Jan;49(1):134-48. doi: 10.1080/10428190701593636.
Bone marrow stromal cells (BMSCs) have been found to support leukemic cell survival; however, the mechanisms responsible are far from elucidated yet. Therefore, the effect of BMSCs on both proliferation and apoptosis characteristics of acute myeloid leukaemia (AML) cells was investigated as well as the effect of BMSCs exposure to chemotherapy on the stromal supportive capacity. Leukemic HL-60 and primary AML cells were either untreated or treated with cytarabine and subsequently cultured for 3-4 days, in the presence or absence of untreated or cytarabine-treated BMSCs. The effect on proliferation and apoptosis was investigated with flow cytometry using CFSE labeling and Syto16 and 7AAD staining. BMSCs were found to maintain cytarabine-exposed primary AML cells by protection against spontaneous apoptosis. Accordingly, an increase in phosphorylated-AKT and Bcl-2 expression was found. Concomitant exposure of BMSCs to cytarabine resulted in a dose-dependent decrease of protective capacity of BMSCs. Thus, inhibition of spontaneous apoptosis of leukemic cells mediated by phosphorylation of AKT/Bcl-2 pathway results in protection of leukemic cells by BMSCs, which decreases after BMSCs exposure to chemotherapy. Targeting both the tumor cells and intervening in their interaction with the bone marrow microenvironment may thus affect clinical outcome in AML.
骨髓基质细胞(BMSCs)已被发现可支持白血病细胞存活;然而,其相关机制仍远未阐明。因此,研究了BMSCs对急性髓系白血病(AML)细胞增殖和凋亡特性的影响,以及BMSCs暴露于化疗药物后对其基质支持能力的影响。白血病HL - 60细胞和原代AML细胞分别进行未处理或阿糖胞苷处理,随后在有无未处理或经阿糖胞苷处理的BMSCs存在的情况下培养3 - 4天。使用CFSE标记以及Syto16和7AAD染色,通过流式细胞术研究对增殖和凋亡的影响。发现BMSCs通过防止自发凋亡来维持经阿糖胞苷处理的原代AML细胞的存活。相应地,发现磷酸化AKT和Bcl - 2表达增加。BMSCs与阿糖胞苷同时暴露导致BMSCs保护能力呈剂量依赖性下降。因此,由AKT/Bcl - 2途径磷酸化介导的白血病细胞自发凋亡的抑制导致BMSCs对白血病细胞的保护作用,而BMSCs暴露于化疗药物后这种保护作用减弱。因此,靶向肿瘤细胞并干预其与骨髓微环境的相互作用可能会影响AML的临床结局。